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Quantum Simulation of Generic Many-Body Open System Dynamics Using Classical Noise

Quantum Simulation of Generic Many-Body Open System Dynamics Using Classical Noise

来源:Arxiv_logoArxiv
英文摘要

We introduce a scheme for the quantum simulation of many-body decoherence based on the unitary evolution of a stochastic Hamiltonian. Modulating the strength of the interactions with stochastic processes, we show that the noise-averaged density matrix simulates an effectively open dynamics governed by $k$-body Lindblad operators. Markovian dynamics can be accessed with white-noise fluctuations; non-Markovian dynamics requires colored noise. The time scale governing the fidelity decay under many-body decoherence is shown to scale as $N^{-2k}$ with the system size $N$. Our proposal can be readily implemented in a variety of quantum platforms including optical lattices, superconducting circuits and trapped ions.

Jianshu Cao、Adolfo del Campo、Aur¨|lia Chenu、Mathieu Beau

10.1103/PhysRevLett.118.140403

物理学

Jianshu Cao,Adolfo del Campo,Aur¨|lia Chenu,Mathieu Beau.Quantum Simulation of Generic Many-Body Open System Dynamics Using Classical Noise[EB/OL].(2016-08-03)[2025-08-06].https://arxiv.org/abs/1608.01317.点此复制

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